TY - JOUR
T1 - Recent advancements of photo- and electro-active hydrogen-bonded organic frameworks
AU - Gao, Xiangyu
AU - Lu, Wanyue
AU - Wang, Yao
AU - Song, Xiyu
AU - Wang, Cheng
AU - Kirlikovali, Kent O.
AU - Li, Peng
N1 - Publisher Copyright:
© 2022, Science China Press and Springer-Verlag GmbH Germany, part of Springer Nature.
PY - 2022/11
Y1 - 2022/11
N2 - The development of hydrogen-bonded organic frameworks (HOFs) with predictable topologies and robust structures for targeted functionality was initially hindered by the relatively weak H-bonding interactions as many HOFs would collapse upon guest solvent removal. Recently, the design of tectons with large π-conjugated systems that form intermolecular shape-fitted π–π stacking interactions has proven to be an effective strategy to create chemically and thermally stable HOFs. More importantly, these HOFs with large π-conjugated tectons exhibit accelerated redox hopping processes due to more favorable through-space orbital overlap interactions. These intrinsic photoelectric properties render HOFs an appealing and unique class of photoactive and electroactive porous materials for catalysis, sensing, and biomedical applications. Based on shape-fitted π–π stacking strategy, various robust photoactive and electroactive HOFs have been built from tectons containing both photosensitive or redox-active organic cores and hydrogen bonding sites. This review summarizes the recent advancements, including synthetic methods and diverse applications, in the development of photo- and electro-active HOFs. Considering the numerous photo- and electro-active organic units available, as well as the virtually unlimited potential combinations of organic cores and hydrogen bonding sites, we anticipate that this review will inspire scientists in a range of disciplines, ranging from porous materials to organic photoelectric materials and catalysis scientists, to further explore functional photo- and electro-active HOF materials. [Figure not available: see fulltext.].
AB - The development of hydrogen-bonded organic frameworks (HOFs) with predictable topologies and robust structures for targeted functionality was initially hindered by the relatively weak H-bonding interactions as many HOFs would collapse upon guest solvent removal. Recently, the design of tectons with large π-conjugated systems that form intermolecular shape-fitted π–π stacking interactions has proven to be an effective strategy to create chemically and thermally stable HOFs. More importantly, these HOFs with large π-conjugated tectons exhibit accelerated redox hopping processes due to more favorable through-space orbital overlap interactions. These intrinsic photoelectric properties render HOFs an appealing and unique class of photoactive and electroactive porous materials for catalysis, sensing, and biomedical applications. Based on shape-fitted π–π stacking strategy, various robust photoactive and electroactive HOFs have been built from tectons containing both photosensitive or redox-active organic cores and hydrogen bonding sites. This review summarizes the recent advancements, including synthetic methods and diverse applications, in the development of photo- and electro-active HOFs. Considering the numerous photo- and electro-active organic units available, as well as the virtually unlimited potential combinations of organic cores and hydrogen bonding sites, we anticipate that this review will inspire scientists in a range of disciplines, ranging from porous materials to organic photoelectric materials and catalysis scientists, to further explore functional photo- and electro-active HOF materials. [Figure not available: see fulltext.].
KW - HOF materials
KW - electro-active
KW - hydrogen-bonded organic frameworks
KW - photo-active
UR - https://www.scopus.com/pages/publications/85134530570
U2 - 10.1007/s11426-022-1333-9
DO - 10.1007/s11426-022-1333-9
M3 - 文献综述
AN - SCOPUS:85134530570
SN - 1674-7291
VL - 65
SP - 2077
EP - 2095
JO - Science China Chemistry
JF - Science China Chemistry
IS - 11
ER -